Analysis of slow voltage variations and losses in LVN with integrated PV power plants and ESS

V. Becirovic, Faris Karic, Kemal Ligata, S. Smaka
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Abstract

The power system (PS) evolves with the introduction of new technologies in the sectors of production, transmission, distribution and control of electricity consumption. The philosophy of PS control, operation and management is changing. The public low-voltage network (LVN) faces the major changes due to integration of new smart grid technologies. The integration of photovoltaic power plants (PVPPs) and Energy Storage System (ESS) in LVN is a focus of this paper. Three scenarios are considered: (1) analysis of LVN without PVPPs and ESS, (2) analysis of LVN with PVPPs, where LVN is treated as energy storage (ES), (3) analysis of LVN with PVPPs and ESS. The novel algorithm for ESS control aiming to peak load reduction is presented in the paper. Losses and voltage conditions are analyzed on all LVN buses. The slow voltage variations analysis is carried out according to the EN50160 standard. It was shown that the connection of the ESS has negligible impact on losses in LVN. Slow voltage variations are within limits defined by standard EN50160 for all considered scenarios.
集成光伏电站和ESS的LVN电压缓慢变化和损耗分析
电力系统(PS)随着电力生产、传输、分配和控制等领域新技术的引入而发展。PS控制、运营和管理的理念正在发生变化。新型智能电网技术的应用将使公共低压电网面临重大变革。光伏电站与储能系统在LVN中的集成是本文研究的重点。考虑三种情况:(1)不含PVPPs和ESS的LVN分析;(2)有PVPPs的LVN分析,其中LVN被视为储能(ES);(3)有PVPPs和ESS的LVN分析。提出了一种以降峰负荷为目标的ESS控制新算法。分析了所有LVN母线的损耗和电压情况。根据EN50160标准进行慢电压变化分析。结果表明,ESS连接对LVN损失的影响可以忽略不计。对于所有考虑的场景,缓慢的电压变化在标准EN50160定义的限制范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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